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首页> 外文期刊>Russian Journal of Developmental Biology >Dynamics of Lipid and Fatty Acid Content at Early Ontogenesis Stages in Pink Salmon Oncorhynchus gorbuscha (Walbaum, 1792) in a Natural Environment (Indera River, Kola Peninsula)
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Dynamics of Lipid and Fatty Acid Content at Early Ontogenesis Stages in Pink Salmon Oncorhynchus gorbuscha (Walbaum, 1792) in a Natural Environment (Indera River, Kola Peninsula)

机译:在自然环境中粉红色三文鱼早孕阶段脂质和脂肪酸含量的动态(Walbaum,1792)(Indera River,Kola Peninsula)

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摘要

A comparative study of lipid and fatty acid status at the early stages of pink salmon's ontogenesis has been carried out in prespawn eggs, at the stage of eye pigmentation, and in the hatched prelarvae under ecological conditions of a natural environment (Indera River, Kola Peninsula). It is shown that the high plasticity of pink salmon is due to the activation and combination of complex biochemical mechanisms at the early stages of development, providing both the sensitivity and the sustainability of the species, which contributes to the formation of the species' high potential at high latitudes. Metabolically mature pink salmon eggs are characterized by a high level of total lipids with a high amount of the structural and energetic components that provide optimal development of the embryos. Metabolic processes are activated at the stage of eye pigmentation in autumn, which affects the changes in the spectrum of individual classes of lipids and fatty acids and their ratio indicators. The prelarvae that hatched in winter at temperatures below zero have a low content of phospholipids, triacylglycerols, and 16:1 omega-7, 18:3 omega-3, and 20:5 omega-3 fatty acids as well as high level of cholesterol, cholesterol esters, and a ratio index of 20:4 omega-6/18:2 omega-6 fatty acids, while the high content of dominant 18:1 omega-9 and 22:6 omega-3 fatty acids remains the same. Multidirectional changes of lipid and fatty acid levels at the stage of eye pigmentation (the most sensitive stage of embryogenesis) and in pink salmon prelarvae after hatching are caused by specific processes of metabolism intensification of the developing organism.
机译:在粉红色鲑鱼的血液发生早期的脂质和脂肪酸状况的比较研究已经在眼睛色素沉着阶段进行了预期鸡蛋,并在自然环境生态条件下在孵化的前果(Indera River,Kola半岛)下进行)。结果表明,粉红鲑鱼的高可塑性是由于在开发的早期阶段的复杂生化机制的激活和组合,提供了物种的敏感性和可持续性,这有助于形成物种的高潜力高纬度。代谢成熟的粉红色三文鱼蛋征在于高水平的总脂质,具有大量的结构和能量组分,提供胚胎的最佳发育。在秋季的眼睛色素沉着阶段激活代谢过程,这影响了各种脂质和脂肪酸的频谱的变化及其比例指示剂。在低于阳性的冬季孵化的prelarvae具有低含量的磷脂,三酰基甘油和16:1ω-7,18:3ω-3和20:5ω-3脂肪酸以及高水平的胆固醇,胆固醇酯,和20:4ω-6/18:2ω-6脂肪酸的比例指数,而高含量的显性18:1ω-3脂肪酸保持相同。眼睛色素沉着阶段脂质和脂肪酸水平的多向变化(胚胎发生最敏感的阶段)和粉红色的鲑鱼Prelarvae孵化后是由显影生物的特定过程引起的。

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